Oscilloscopes for Labs & R&D — Siglent (Canada)

Oscilloscopes for Labs & R&D — Siglent (Canada)
Siglent · Digital and Mixed-Signal Oscilloscopes

Capture, measure and analyze signals from basic circuits to high-speed systems.

Siglent oscilloscopes provide bandwidth, sampling speed, memory depth and analysis tools for electronics design, power conversion, embedded systems, automotive networks, education and automated validation. Choose from economical two-channel instruments, four-channel mixed-signal models and high-resolution 12-bit HD platforms.

50 MHz to multi-gigahertz bandwidth 2, 4, 6 and 8-channel options 8-bit and 12-bit HD platforms
Digital Signal Capture
TRIGGERED
Channel 1 frequency
125.000 MHz
2.00 GSa/s Sample rate
100 Mpts Memory depth
12 bit ADC resolution

Select an oscilloscope around the signal—not only the price

Bandwidth, sample rate, channels, memory, vertical resolution and probes all affect whether the instrument can display the event clearly and measure it accurately.

BW

Capture the required bandwidth

Select sufficient analog bandwidth and sample rate for the signal rise time, pulse shape, harmonics and modulation that must be observed.

HD

Resolve smaller signal details

Twelve-bit HD oscilloscopes provide finer vertical resolution than conventional eight-bit instruments, helping reveal low-level ripple, noise and small changes on larger waveforms.

MSO

Correlate analog and digital events

Mixed-signal and serial-decode options help engineers compare analog power, sensor or communication signals with digital timing and protocol activity.

Siglent oscilloscope product families

The RCC category includes value-oriented bench scopes, 12-bit high-resolution models, mainstream mixed-signal platforms and higher-bandwidth instruments for advanced engineering.

General-purpose bench oscilloscopes

Economical two-channel scopes

SDS1000DL+ / CML+ Series

Entry-level digital storage oscilloscopes for education, service, maintenance and general electronics troubleshooting.

  • Two analog input channels
  • 50 MHz and 100 MHz RCC-listed models
  • Digital storage oscilloscope operation
  • Suitable for basic waveform and timing measurements
  • Cost-effective laboratory and education platform
View Entry-Level Oscilloscopes
Mainstream Super Phosphor scope

SDS1000X-E Series

General-purpose two- and four-channel oscilloscopes for development, troubleshooting, education and embedded-system work.

  • 100 MHz and 200 MHz RCC-listed models
  • Two- and four-channel configurations
  • Deep-memory waveform acquisition
  • Serial-bus trigger and decode options
  • Bode Plot and analysis options on supported configurations
View SDS1104X-E
Value four-channel scope

SDS1000X-U Series

Lower-cost four-channel Siglent oscilloscope platform for everyday signal viewing and bench troubleshooting.

  • Four analog channels
  • 100 MHz RCC-listed configuration
  • Designed as an economical bench oscilloscope
  • Suitable for education and general repair work
  • Compact alternative to higher-feature series
View SDS1000X-U Models

High-resolution 12-bit oscilloscopes

Compact 12-bit HD platform

SDS1000X HD Series

High-resolution oscilloscopes for power-electronics, sensor, audio, ripple and low-noise measurements.

  • 100 MHz and 200 MHz models
  • Two- and four-channel configurations
  • 12-bit high-resolution acquisition
  • Up to 2 GSa/s on RCC-listed models
  • 100 Mpts memory and 10.1-inch touch display
View SDS1000X HD
Mainstream 12-bit performance

SDS2000X HD Series

Four-channel high-resolution scopes for embedded, power, automotive and mixed-signal engineering applications.

  • 200 MHz and 350 MHz RCC-listed models
  • Four analog channels
  • 12-bit high-resolution acquisition
  • Serial-bus and power-analysis software options
  • Suitable for more demanding waveform analysis
View SDS2000X HD
Up to 1 GHz HD analysis

SDS3000X HD Series

Four-channel high-performance 12-bit oscilloscopes for high-speed embedded, power, automotive and communication work.

  • 350 MHz, 500 MHz and 1 GHz RCC-listed models
  • Four analog channels
  • Up to 4 GSa/s sampling
  • 400 Mpts memory depth
  • 10.1-inch touch-screen interface
View SDS3034X HD

Performance and advanced-channel platforms

Mainstream mixed-signal performance

SDS2000X-E / Plus Series

Flexible oscilloscopes for embedded-system debugging, serial-bus analysis and general engineering.

  • 100 MHz to 350 MHz RCC-listed models
  • Two- and four-channel configurations
  • Deep memory and fast waveform capture
  • MSO, serial decode and waveform-generator options
  • Rental listing available for SDS2354X Plus
View SDS2104X Plus
4, 6 and 8-channel HD scope

SDS5000X HD Series

High-channel-count 12-bit oscilloscopes for complex power, control, embedded and electromechanical systems.

  • 350 MHz, 500 MHz and 1 GHz models
  • Four-, six- and eight-channel configurations
  • 5 GSa/s sampling
  • Up to 2.5 Gpts per channel memory
  • 12.1-inch capacitive touch screen
View SDS5034X HD
Low-profile multi-channel platform

SDS5000L Series

Low-profile eight-channel 12-bit oscilloscopes for rack, laboratory automation and systems requiring multiple inputs.

  • Eight analog input channels
  • 350 MHz and 500 MHz RCC-listed models
  • 12-bit acquisition
  • 5 GSa/s sampling
  • Low-profile system-integration format
View SDS5000L Models

Typical oscilloscope applications

Siglent scopes support education, electronics development, industrial troubleshooting, power electronics, automotive, communications and automated validation.

Embedded-system debugging

Correlate analog power, clock and sensor signals with digital buses such as UART, SPI, I²C, CAN or LIN using supported options.

Power-electronics analysis

Measure switching waveforms, gate drive, ripple, inrush, harmonics and switching losses using suitable probes and analysis options.

Motor-drive troubleshooting

Observe inverter outputs, control timing, current feedback, encoder signals and switching behaviour across multiple channels.

Automotive electronics

Analyze sensors, actuators, ignition, CAN, CAN FD, LIN, FlexRay and other supported vehicle communication signals.

Education and service

View amplitude, frequency, timing, phase and transient behaviour when teaching electronics or troubleshooting equipment.

High-channel-count systems

Use six- or eight-channel models to compare multiple phases, control signals, sensors and power rails at the same time.

Siglent oscilloscope family comparison

Use this table as a starting point. Exact specifications vary by model and should be confirmed before ordering.

Series RCC-listed bandwidth range Typical channels Resolution Best fit
SDS1000DL+ / CML+ 50–100 MHz 2 Conventional DSO Education, service and basic electronics
SDS1000X-E / X-U 100–200 MHz 2 or 4 8-bit class General bench and embedded-system work
SDS1000X HD 100–200 MHz 2 or 4 12 bit Low-noise, ripple, sensor and power measurements
SDS2000X-E / Plus 100–350 MHz 2 or 4 8-bit class Embedded, serial-bus and mainstream engineering
SDS2000X HD 200–350 MHz 4 12 bit Power electronics and higher-resolution debugging
SDS3000X HD 350 MHz–1 GHz 4 12 bit High-speed embedded and advanced power analysis
SDS5000X HD 350 MHz–1 GHz 4, 6 or 8 12 bit Complex multi-channel engineering systems
SDS5000L 350–500 MHz 8 12 bit Rack, automation and high-channel-count acquisition

How to select the right oscilloscope

A suitable oscilloscope must be selected together with the correct voltage, current, differential or logic probes.

Start with bandwidth

Select enough bandwidth for the highest meaningful signal frequency and rise time. Fast digital edges often require more bandwidth than the clock frequency alone suggests.

Confirm channel count

Choose two channels for basic comparisons, four for most embedded and power work, or six to eight channels for multi-phase and control-system measurements.

Choose vertical resolution

Select a 12-bit HD scope when small ripple, noise or waveform details must be measured in the presence of a larger signal.

Check memory depth

Deeper memory allows longer time windows to be recorded while maintaining a useful sample rate for intermittent or complex events.

Identify software options

Confirm whether serial decode, mixed-signal inputs, Bode Plot, power analysis, jitter or compliance testing is needed.

Select safe probes

Probe voltage rating, bandwidth, isolation, attenuation and current range must be suitable for the circuit under test.

Need help selecting a Siglent oscilloscope and probes?

Send RCC Electronics the signal type, maximum voltage, expected frequency or rise time, required channel count, measurement duration, desired vertical resolution, serial buses, current range, isolation requirements and planned analysis functions.

Contact RCC Electronics

Frequently asked questions

Common questions when selecting a digital or mixed-signal oscilloscope.

How much oscilloscope bandwidth do I need?

The required bandwidth depends on signal frequency, rise time and the waveform detail that must be preserved. Digital edges, switching transients and harmonics may require substantially more bandwidth than the fundamental frequency.

What is the advantage of a 12-bit HD oscilloscope?

A 12-bit ADC provides more vertical quantization levels than a conventional 8-bit ADC. This can make small ripple, noise and waveform variations easier to distinguish when test conditions and probe quality support the measurement.

Should I choose two or four channels?

Two channels may be sufficient for basic input-versus-output comparisons. Four channels are more useful for power converters, motor drives, embedded systems and circuits where several timing or control signals must be observed together.

What does memory depth affect?

Memory depth determines how many samples can be stored. More memory allows a longer acquisition window at a given sample rate and can help capture intermittent events while preserving detail.

Can Siglent oscilloscopes decode serial buses?

Many Siglent series support serial trigger and decode options. Available protocols vary by model and may include common embedded, automotive, audio and aerospace buses.

Can the oscilloscope directly measure high voltage or high current?

Only when a compatible probe with suitable voltage, current, bandwidth, isolation and safety ratings is used. The oscilloscope input and standard passive probe must never be assumed suitable for high-energy or floating measurements.

 

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